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Dual Binding Mode of the Nascent Polypeptide-associated Complex Reveals a Novel Universal Adapter Site on the Ribosome*

机译:新生多肽相关复合物的双重结合模式揭示了核糖体上的新型通用衔接子位点*

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摘要

Nascent polypeptide-associated complex (NAC) was identified in eukaryotes as the first cytosolic factor that contacts the nascent polypeptide chain emerging from the ribosome. NAC is present as a homodimer in archaea and as a highly conserved heterodimer in eukaryotes. Mutations in NAC cause severe embryonically lethal phenotypes in mice, Drosophila melanogaster, and Caenorhabditis elegans. In the yeast Saccharomyces cerevisiae NAC is quantitatively associated with ribosomes. Here we show that NAC contacts several ribosomal proteins. The N terminus of βNAC, however, specifically contacts near the tunnel exit ribosomal protein Rpl31, which is unique to eukaryotes and archaea. Moreover, the first 23 amino acids of βNAC are sufficient to direct an otherwise non-associated protein to the ribosome. In contrast, αNAC (Egd2p) contacts Rpl17, the direct neighbor of Rpl31 at the ribosomal tunnel exit site. Rpl31 was also recently identified as a contact site for the SRP receptor and the ribosome-associated complex. Furthermore, in Escherichia coli peptide deformylase (PDF) interacts with the corresponding surface area on the eubacterial ribosome. In addition to the previously identified universal adapter site represented by Rpl25/Rpl35, we therefore refer to Rpl31/Rpl17 as a novel universal docking site for ribosome-associated factors on the eukaryotic ribosome.
机译:在真核生物中,新生多肽相关复合物(NAC)被确定为第一个接触核糖体新生多肽链的胞质因子。 NAC在古细菌中以同二聚体形式存在,在真核生物中以高度保守的异二聚体形式存在。 NAC中的突变会在小鼠,果蝇和秀丽隐杆线虫中引起严重的胚胎致死表型。在酵母中,酿酒酵母NAC与核糖体定量结合。在这里,我们显示NAC与几种核糖体蛋白接触。然而,βNAC的N末端会在隧道出口核糖体蛋白Rpl31附近特异性接触,这是真核生物和古细菌所特有的。此外,βNAC的前23个氨基酸足以将原本不相关的蛋白质引导至核糖体。相反,αNAC(Egd2p)在核糖体隧道出口位点与Rpl31的直接邻居Rpl17接触。 Rpl31最近也被确定为SRP受体和核糖体相关复合物的接触位点。此外,在大肠杆菌中,肽去甲酰基化酶(PDF)与真细菌核糖体上的相应表面积相互作用。除了先前确定的以Rpl25 / Rpl35表示的通用衔接子位点外,我们因此将Rpl31 / Rpl17称为真核糖体上核糖体相关因子的新型通用停靠位点。

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